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Electron-hole Asymmetry in the Superconductivity of Doped BaFe2As2 Seen via the Rigid Chemical-potential Shift in Photoemission

Authors :
Neupane, Madhab
Richard, Pierre Luc
Xu, Yiming
Nakayama, Kosuke
Sato, Takafumi
Takahashi, Takashi
Federov, Alexei V.
Xu, Gang
Dai, Xi
Fang, Zhong
Wang, Ziqiang
Chen, Genfu
Wang, Nanlin
Wen, Haihu
Ding, Hong
Neupane, Madhab
Richard, Pierre Luc
Xu, Yiming
Nakayama, Kosuke
Sato, Takafumi
Takahashi, Takashi
Federov, Alexei V.
Xu, Gang
Dai, Xi
Fang, Zhong
Wang, Ziqiang
Chen, Genfu
Wang, Nanlin
Wen, Haihu
Ding, Hong
Publication Year :
2011

Abstract

We have performed a systematic photoemission study of the chemical-potential shift as a function of carrier doping in a pnictide system based on BaFe2As2. The experimentally determined chemical-potential shift is consistent with the prediction of a rigid band shift picture by renormalized first-principle band calculations. This leads to an electron-hole asymmetry (EHA) in the Fermi surface (FS) nesting condition due to different effective masses for different FS sheets, which can be calculated from the Lindhard function of susceptibility. This built-in EHA, which matches well the observed asymmetric superconducting domes in the phase diagram, strongly supports FS quasinesting driven superconductivity in iron pnictides. © 2011 American Physical Society.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1363060938
Document Type :
Electronic Resource